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Realization of the unit of luminous flux at the HUT using the absolute integrating-sphere method

机译:使用绝对积分球法实现HUT处光通量的单位

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摘要

A description of a detector-based realization of the unit of luminous flux (lumen) at the Helsinki University of Technology (HUT) is presented. The realization is based on the absolute integrating-sphere method developed at the National Institute of Standards and Technology (NIST), with some modifications. The measurement set-up consists of a 1.65 m integrating sphere, two photometers, a precision aperture and an external luminous-flux source. The characterization and maintenance of the measurement system are described and the uncertainty budget of the realization is presented. The uncertainty analysis indicates a relative expanded uncertainty (k = 2) of 4.7 x 10~3 for the realization. According to the results of an earlier bilateral comparison between the HUT and the NIST, the ratio of the measured luminous flux value of HUT to that of NIST was 1.0006 with an expanded uncertainty (k = 2) of 10 x 10~(-3), including uncertainties due to realization of the units. Another indirect test measurement indicated a corresponding ratio of 0.9984 with the luminous flux measurements of BIPM with an expanded uncertainty (k = 2) of 11 x 10~(-3), including uncertainties due to realization of the units.
机译:本文介绍了赫尔辛基工业大学(HUT)基于检测器的光通量(流明)单位的实现。该实现基于美国国家标准技术研究院(NIST)开发的绝对积分球方法,并进行了一些修改。测量装置包括一个1.65 m的积分球,两个光度计,一个精密光圈和一个外部光通量光源。描述了测量系统的特性和维护,并给出了实现的不确定性预算。不确定性分析表明,该实现的相对扩展不确定性(k = 2)为4.7 x 10〜3。根据早期的HUT与NIST双边比较的结果,HUT的测量光通量与NIST的光通量之比为1.0006,不确定度(k = 2)为10 x 10〜(-3) ,包括由于实现单位带来的不确定性。另一项间接测试测量结果表明,BIPM的光通量测量结果与测量值的比率为0.9984,不确定度(k = 2)扩展为11 x 10〜(-3),其中包括由于实现单位引起的不确定性。

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